Dharmveer Agarwal, Ajay D. Thakur, Atul C. Thakur
2022.6.28Journal of Micro and Bio Robotics
tlooto Summary
The developed system can be utilised to study the useful properties of large microscopic biological objects in an ambient fluid-flow environment and has tremendous scope for applications in key areas including soft-matter science, cell biology and cancer research.
Abstract
Abstract is not available.
Citation format
AGARWAL, Dharmveer; THAKUR, Ajay D.; THAKUR, Atul C. Magnetic microbot-based micromanipulation of surrogate biological objects in fluidic channels. Journal of Micro and Bio Robotics, 2022, 19: 21–35.